Cooperative simultaneous localization and synchronization: Toward a low-cost hardware implementation

B. Etzlinger, Florian Meyer, H. Wymeersch, F. Hlawatsch, Gerhard Müller, A. Springer
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引用次数: 13

Abstract

Cooperative sensor self-localization (CSL) in wireless networks usually requires the nodes to be equipped with specific ranging hardware including ultra-wideband or ultrasonic distance sensors. Such designs are not suitable for application in low-cost, low-power sensor networks. Here, we demonstrate how low-cost, low-power, asynchronous sensor nodes can be used to perform CSL (and, simultaneously, distributed synchronization) by means of time-stamped communication without additional ranging hardware. Our method combines a belief propagation message passing algorithm for cooperative simultaneous localization and synchronization (CoSLAS) with a MAC-layer time stamping scheme.We validate the models underlying the CoSLAS algorithm by means of measurements, and we demonstrate that the localization accuracy achieved by our hardware implementation is far better than that corresponding to the time resolution and measurement errors of the hardware.
协作式同步定位和同步:迈向低成本硬件实现
无线网络中的协同传感器自定位(CSL)通常要求节点配备特定的测距硬件,包括超宽带或超声波距离传感器。这种设计不适合应用于低成本、低功耗的传感器网络。在这里,我们将演示如何使用低成本、低功耗、异步传感器节点通过时间戳通信来执行CSL(以及同时执行分布式同步),而无需额外的测距硬件。该方法结合了协作同步定位(CoSLAS)的信念传播消息传递算法和mac层时间戳方案。我们通过测量验证了CoSLAS算法的模型,并证明了我们的硬件实现所获得的定位精度远远优于相应的硬件时间分辨率和测量误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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